A conveying roller and a conveying roller spraying device for preventing glass scratches
A technology of glass scraping and glass tempering, applied in the direction of spraying devices, etc., can solve the problems of reducing the yield of products, and achieve the effects of improving yield, avoiding loss, and high radiation rate
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Embodiment 1
[0026] Depend on figure 1 The shown transmission roller for preventing glass scratches includes a roller body 1 of a glass tempering furnace. The roller body 1 is an axially transparent roller body. The roller body 1 is arranged on the shaft body 3, and the roller body 1 is sleeved on the The outer ring of the shaft body 3, the roller body 1 is fixedly connected with the shaft body 3, the two ends of the shaft body 3 protrude from the two ends of the roller body 1 respectively, the material of the shaft body 3 is metal, the material of the roller body 1 is ceramic, and the roller body The outer ring surface of 1 (i.e. the outer surface of the roller body 1) is provided with a nanofilm 2, and the material of the nanofilm 2 is silicon carbide. Of course, the invention is not restricted to the above-mentioned form, and the material of the nanofilm 2 can also be silicon carbide, oxide One or a mixture of silicon, alumina, zirconia.
[0027] The thickness of the nano-membrane 2 is...
Embodiment 2
[0030] Depend on Figure 2-Figure 3 The conveying roller shown to prevent glass scratches is different from Embodiment 1 in that: the shaft body 3 is also provided with a nozzle 7, which is located on the axial side of the roller body 1, and the nozzle 7 includes a sleeve The annular body 8 on the outer ring of the shaft body 3 and the nozzle 5 provided on the annular body 8 are made of metal or ceramics, and the material of the nozzle 5 is also metal or ceramics. A sealing ring (not shown in the sealing ring figure) is provided between the annular body 8 and the shaft body 3, an annular groove 9 is provided along the inner surface of the annular body 8, and an annular groove 9 is provided on the end surface of the annular body 8 facing the roller body 1. The spray holes 6 communicated with the cavity of the annular groove 9 , four spray holes 6 are arranged at intervals around the shaft body 3 , and the spray holes 6 are located radially outside the roller body 1 .
[0031] ...
Embodiment 3
[0038] Depend on Figure 4-Figure 6 A conveying roller for preventing glass scratches shown differs from Embodiment 1 in that: the nozzle 5 includes a spherical portion 14 and a cylindrical portion 15, and the spherical portion 14 and the cylindrical portion 15 are integrally formed The nozzle 5 is provided with an ejection channel that runs through the spherical part 14 and the cylindrical part 15 in sequence along the nozzle axial direction. The two ports of the ejection channel are respectively the spout 4 on the spherical surface of the spherical part 14 and the The liquid inlet 4A on the end face of 15, the spherical part 14 on the nozzle 5 is arranged in the nozzle hole 6, and the hole surface shape of the nozzle hole 6 is adapted to the spherical part 14, and the hole surface of the nozzle hole 6 is The concave arc surface extending along the circumference, the spherical part 14 is in contact with the hole surface of the nozzle hole 6 and forms a spherical secondary str...
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Abstract
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